Zhang Lu, Wu Nan, Ren Yingdang, Wang Xifeng
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Institute of Plant Protection, Henan Academy of Agricultural Sciences, Zhengzhou, China.
Front Microbiol. 2021 Feb 24;12:628262. doi: 10.3389/fmicb.2021.628262. eCollection 2021.
Viruses in genus (family ) have caused serious damage to rice, maize and sugarcane in American, Asian, European and Oceanian countries, where seven plant-infecting and two insect-specific viruses have been reported. Because the planthopper vectors are the only means of virus spread in nature, their migration and efficient transmission of these viruses among different crops or gramineous weeds in a persistent propagative manner are obligatory for virus epidemics. Understanding the mechanisms of virus transmission by these insect vectors is thus key for managing the spread of virus. This review describes current understandings of main fijiviruses and their insect vectors, transmission characteristics, effects of viruses on the behavior and physiology of vector insects, molecular transmission mechanisms. The relationships among transmission, virus epidemics and management are also discussed. To better understand fijivirus-plant disease system, research needs to focus on the complex interactions among the virus, insect vector, insect microbes, and plants.
属(科)的病毒已在美国、亚洲、欧洲和大洋洲国家对水稻、玉米和甘蔗造成了严重损害,在这些地区已报道了7种感染植物的病毒和2种昆虫特异性病毒。由于稻飞虱媒介是病毒在自然界传播的唯一途径,它们以持久性增殖方式在不同作物或禾本科杂草间迁移并有效传播这些病毒,是病毒流行的必要条件。因此,了解这些昆虫媒介传播病毒的机制是控制病毒传播的关键。本综述描述了目前对主要斐济病毒及其昆虫媒介、传播特性、病毒对媒介昆虫行为和生理的影响、分子传播机制的认识。还讨论了传播、病毒流行与管理之间的关系。为了更好地理解斐济病毒-植物病害系统,研究需要聚焦于病毒、昆虫媒介、昆虫微生物和植物之间的复杂相互作用。